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Paclitaxel and docetaxel resistance in prostate cancer: Molecular mechanisms and possible therapeutic strategies

前列腺癌 多西紫杉醇 医学 癌症 紫杉醇 癌症研究 前列腺 卡巴齐塔塞尔 肿瘤进展 PTEN公司 肿瘤科 恶性肿瘤 内科学 雄激素剥夺疗法 生物 PI3K/AKT/mTOR通路 细胞凋亡 生物化学
作者
Mehrdad Hashemi,Mohammad Arad Zandieh,Yasmin Talebi,Parham Rahmanian,Sareh Sadat Shafiee,Melina Maghsodlou Nejad,Roghayeh Babaei,Farzaneh Hasani Sadi,Romina Rajabi,Zahra Oryan Abkenar,Shamin Rezaei,Jun Ren,Noushin Nabavi,Ramin Khorrami,Mohsen Rashidi,Kiavash Hushmandi,Maliheh Entezari,Afshin Taheriazam
出处
期刊:Biomedicine & Pharmacotherapy [Elsevier BV]
卷期号:160: 114392-114392 被引量:80
标识
DOI:10.1016/j.biopha.2023.114392
摘要

Prostate cancer is among most malignant tumors around the world and this urological tumor can be developed as result of genomic mutations and their accumulation during progression towards advanced stage. Due to lack of specific symptoms in early stages of prostate cancer, most cancer patients are diagnosed in advanced stages that tumor cells display low response to chemotherapy. Furthermore, genomic mutations in prostate cancer enhance the aggressiveness of tumor cells. Docetaxel and paclitaxel are suggested as well-known compounds for chemotherapy of prostate tumor and they possess a similar function in cancer therapy that is based on inhibiting depolymerization of microtubules, impairing balance of microtubules and subsequent delay in cell cycle progression. The aim of current review is to highlight mechanisms of paclitaxel and docetaxel resistance in prostate cancer. When oncogenic factors such as CD133 display upregulation and PTEN as tumor-suppressor shows decrease in expression, malignancy of prostate tumor cells enhances and they can induce drug resistance. Furthermore, phytochemicals as anti-tumor compounds have been utilized in suppressing chemoresistance in prostate cancer. Naringenin and lovastatin are among the anti-tumor compounds that have been used for impairing progression of prostate tumor and enhancing drug sensitivity. Moreover, nanostructures such as polymeric micelles and nanobubbles have been utilized in delivery of anti-tumor compounds and decreasing risk of chemoresistance development. These subjects are highlighted in current review to provide new insight for reversing drug resistance in prostate cancer.
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